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    • 32. 发明公开
    • Real time particle fluorescence detection device
    • 实时粒子荧光检测装置
    • EP2679985A3
    • 2014-04-23
    • EP12184837.8
    • 2012-09-18
    • Agency For Defense Development
    • Choi, Ki-BongHa, Yeon-ChulLee, Jae-KyungKim, Min-Cheol
    • G01N21/53G01N15/02G01N21/64G01N15/14G01N1/22
    • G01N1/2208G01N15/1459G01N21/53G01N21/6486G01N2001/2223G01N2015/0046
    • The present invention relates to a device for real-time fluorescence detection having a particle concentrator (100) adapted to separate and concentrate the aerosol particles and a particle measuring unit (200) disposed on the underside of the particle concentrator (100). The particle measuring unit (200) includes: an inlet part (210) adapted to introduce the particles and air from the particle concentrator (100) thereinto; an optical chamber (220) having a particle measuring space formed at the interior thereof; a beam shaping part (250) adapted to illuminate the particles in the measuring space with a laser beam; a beam dump part (260); a pair of reflectors (230) disposed in the particle measuring space at an angle of 90° with respect to the forward direction of the laser beam; a particle discharging part (240) adapted to discharge the particles and air to the outside; and a beam splitting part (270) having a scattering light detector (274) and fluorescence detectors (272, 273). adapted to detect scattering light and fluorescence light produced by the interaction between the laser beam and the particles.
    • 本发明涉及用于实时荧光检测的装置,其具有适于分离和浓缩气溶胶颗粒的颗粒浓缩器(100)和设置在颗粒浓缩器(100)的下侧上的颗粒测量单元(200)。 颗粒测量单元(200)包括:入口部分(210),适于将来自颗粒浓缩器(100)的颗粒和空气引入其中; 光学室(220),其具有形成在其内部的颗粒测量空间; 光束成形部件(250),适于利用激光束照射测量空间中的颗粒; 一个光束收集部分(260); 一对反射器(230),相对于激光束的正向以90°的角度设置在颗粒测量空间中; 颗粒排出部件(240),其适于将颗粒和空气排出到外部; 和具有散射光检测器(274)和荧光检测器(272,273)的分束部分(270)。 适于检测由激光束和粒子之间的相互作用产生的散射光和荧光。
    • 33. 发明公开
    • User-interface target motion analysis method using two-dimensional parameter control and speed zoom
    • 使用二维参数控制和速度缩放用户界面目标运动分析方法
    • EP2613175A1
    • 2013-07-10
    • EP13000002.9
    • 2013-01-02
    • Agency For Defense Development
    • Kim, In Soo
    • G01S15/66G01S5/18
    • G01S5/18G01S15/66
    • Disclosed is a user-interface target motion analysis method using two-dimensional parameter control and a target motion analysis system for implementing the method, and the method includes a first step of displaying a user-interface target motion analysis (TMA) screen capable of selecting an input method; a second step of receiving an input method selection signal of a user; a third step of precisely calculating a speed and a course by controlling resolution of speed and course through speed zooming based on the selected input method, and recognizing and storing the speed and the course as input values; a fourth step of simultaneously calculating at least two parameters among parameter values including an initial range, a speed and a course based on the selected input method, and recognizing and storing the parameters as input values; a fifth step of calculating other parameter values that are not calculated in the fourth step, and recognizing and storing the other parameters as input values; and a step of generating a result of the target motion analysis using the parameters inputted through the first to fifth steps.
    • 公开的是使用二维参数控制和用于实现该方法的目标运动分析系统的用户接口的目标运动分析方法,该方法包括:显示一个用户界面目标运动分析(TMA)屏幕能够选择的第一步骤 在输入法; 在用户的输入方法的选择信号接收的第二步骤; 计算精确的速度和通过控制贯穿变速速度,当然分辨率的过程的第三步骤变焦基于所选择的输入方法,并识别与存储的速度和过程中作为输入值; 同时计算参数值,包括初始范围,速度和基于所选择的输入方法的过程中的至少两个参数,以及识别与存储的参数作为输入值的第四步骤; 计算其他参数值的第五步骤没有被计算在第四步骤中,和识别与存储的其他参数作为输入值; 以及使用通过所述第一输入到第五步骤中的参数的目标运动分析的结果的步骤。